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Not yet recruitingNCT07668141Updated Jun 25, 2026

Colistin Nephrotoxicity and Role of Alpha Lipoic Acid

A Phase 3 interventional study of alpha lipoic acid drug (thioctic acid acid) in Nephrotoxicity, sponsored by Helwan University. Not yet recruiting at 2 sites in Egypt. Open to participants aged 18 Years to 80 Years. Per ClinicalTrials.gov, last updated 2026-06-25.

Sponsored by Helwan University · Phase 3, Interventional, and Prevention

Phase
Phase 3
Study type
Interventional
Enrollment
88
Allocation
Randomized
Ages
18 Years to 80 Years
Sex
All
01

Study summary

Nephrotoxicity is a great concern in patients receiving intravenous colistin and there is a disparity in the reported rates between previous studies. Several preclinical researches studied the effect of the antioxidants (e.g. L.carnitine, vitamin C, vitamin E, N-acetyl cysteine, and alpha lipoic acid) in reducing the risk of colistin-induced nephrotoxicity but there is a lack of clinical studies on human. Due to the paucity of studies that early predict colistin-induced nephrotoxicity using early acute kidney injury "AKI" biomarkers e.g. kidney injury molecule 1"KIM1" and the lack of human studies that evaluate the role of alpha lipoic acid in ameliorating colistin-induced nephrotoxicity, so this study will be conducted.

Read the detailed description

According to World Health Organization (WHO), multidrug resistant (MDR) pathogens (e.g. Extended-spectrum beta-lactamases (ESBL), Carbapenem Resistant Enterobacteriaceae (CRE)) are one of the major public threats that yearly cause several million deaths globally. In 2019, Egypt recorded 56,600 deaths linked to antimicrobial resistance (AMR), ranking 58th out of 204 countries for age-standardized mortality rates related to AMR. Regarding the North Africa and Middle East region, Egypt has the second highest mortality rate among 21 countries. The deaths from AMR in Egypt surpass those from diabetes, kidney diseases, transport injuries, chronic respiratory diseases, respiratory infections, tuberculosis, and neurological disorders. In 2021, WHO published the list of antibiotic-resistant pathogens especially the critical group of MDR bacteria includes Pseudomonas aeruginosa, Acinetobacter baumannii, and Enterobacteriaceae, which cause severe infections in hospitalized patients. The resistance rate of carbapenem-resistant gram-negative bacteria (CR-GNB) is increasing over time. According to data from the chain antimicrobial resistance surveillance system, the resistance rate of carbapenem-resistant Klebsiella pneumoniae increased from 4.9% to 10.9% from 2013 to 2020. The resistance rates of carbapenem-resistant Acinetobacter baumannii and Enterobacteriaceae were 53.7% and 18.3%, respectively, in 2020.

Colistin is a polymyxin antibiotic first developed in 1947, fell out of favor due to its nephrotoxicity. With the rise of extensively drug-resistant Gram-negative bacteria, colistin has re-emerged as a last-resort treatment. However, its nephrotoxicity is considered as the main obstacle for using this valuable antibiotic. Colistin-induced nephrotoxicity has been reported in about 20-60% of treated patients. The mechanism of renal toxicity is through increased permeability of the renal tubular epithelium, increasing renal oxidative stress leading to cellular lysis and acute tubular necrosis. Nephrotoxicity incidence is influenced by many risk factors including dosage, and patient-related characteristics such as age, preexisting renal disease, diabetes, hypoalbuminemia, and other concomitant nephrotoxic compounds exposure.

AKI is usually diagnozed based on SCr and urine output. However, these markers are not specific and sensitive to GFR due to extra-renal factors, such as nutrition status, age, and muscle mass and fluid resuscitation. Serum creatinine is nonspecific to structural injury and has a nonlinear relationship with GFR, indicating that vast changes in GFR only signify a slight change in SCr. the changes in creatinine level lag behind the decreases in the GFR and can take up to 24-36 h to show a significant increase after obvious renal insult. Recognizing pharmacological interventions used to prevent or attenuate colistin-induced nephrotoxicity has gained special interest among healthcare professionals in recent years. Different clinical and preclinical studies were conducted to investigate the nephro-protective effect of some antioxidants e.g. melatonin, N-acetyl cysteine (NAC) and alpha lipoic acid (ALA) to prevent colistin nephrotoxicity. For example, ALA administration could reverse the effects of colistin-induced nephrotoxicity, owing to its antioxidant and anti-apoptotic effect as showed in a preclinical study on 2021.

Till now, there is no any published human study to evaluate the role of alpha lipoic acid in ameliorating colistin-induced nephrotoxicity. In addition the paucity of studies that early predict colistin-induced nephrotoxicity especially in Egypt which has a growing need for colistin therapy as it has the higher rates of antimicrobial resistance associated mortality in the North Africa and Middle East region.

02

Conditions studied

  • Nephrotoxicity

Keywords

  • colistin
  • Alpa lipoic acid
  • kidney injury molecule-1
  • Nephrotoxicity
03

In context

Lead sponsor

Helwan University is the lead sponsor of 69 studies on the registry; 16 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 80 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Adult patients who receive intravenous colistin and had positive cultures of multidrug resistant gram negative bacteria.
  • Patients who receive colistin for at least 3 days during their treatment.

Exclusion criteria

Exclusion Criteria:

  • Patients who receive inhaled colistin.
  • Patients who had AKI at baseline
  • chronic kidney disease patients on regular hemodialysis.
  • Renal transplant patients
  • Concurrent use of other nephrotoxic drugs e.g. vancomycin, gentamicin, amikacin and amphotericin B.
  • Concurrent use of other antioxidants e.g. vitamin C, vitamin E and N-acetyl cysteine.
  • Patients are not willing to participate in the study.
  • Patients with any missed doses of colistin and or alpha-lipoic acid.
  • Patients with incomplete medical data
  • Pregnant or breastfeeding women.
05

Study design

Phase
Phase 3
Primary purpose
Prevention
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
88 participants (estimated)

Study arms

  • No intervention
    Control group

    this group receives only intravenous colistin therapy

  • Active comparator
    alpha lipoic acid group

    this group receives oral alpha lipoic acid in addition to intravenous colistin therapy

    Drug: alpha lipoic acid drug (thioctic acid acid)

Interventions

  • Drugalpha lipoic acid drug (thioctic acid acid)

    Oral alpha-lipoic acid will be administered at the start of colistin therapy till the end of the colistin course by a dose of 600 mg every 8 hours to be taken 30 min before meals in the intervention group.

06

What researchers measure

Primary outcomes

  1. Change in urinary kidney injury molecule-1 (KIM-1)

    Urinary KIM-1 will be measured at baseline and on Day 5 of treatment in patients receiving colistin alone or colistin plus alpha-lipoic acid.

    Time frame: Baseline to Day 5

Secondary outcomes

  1. Time to Development of Acute Kidney Injury

    Time from randomization to the first documented occurrence of acute kidney injury during colistin therapy in the control group and the intervention group.

    Time frame: From randomization until the first occurrence of acute kidney injury, hospital discharge, death from any cause, or colistin discontinuation, whichever occurs first, assessed up to 30 days.

07

Study locations

2 sites
  • 6th October Hospital-Dokki-General Authority for Health Insurance Organization
    Giza, Egypt
    • Mohamed Taher Mohy Eldien, Vascular surgery consultant · Contact · mtm84mohy@gmail.com · +201272228188
  • Al-Haram Hospital
    Giza, Egypt
08

References and documents

Individual participant data

Plan to share: No — IPD will not be shared to protect participant confidentiality.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Jun 25, 2026, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT07668141
Lead sponsor
Helwan University
Responsible party
Eman Magdy El-sayed El-yamany (Assistant lecturer at pharmacy practice department, Helwan University) — Principal investigator
First posted
Jun 25, 2026
Start date
Jun 30, 2026 (estimated)
Primary completion
Jan 30, 2027 (estimated)
Completion
Feb 28, 2027 (estimated)
Last update
Jun 25, 2026

Study contacts

Eman Magy Elsayed Elyamany, Assistant lecturer
Contact
Iman.elyamany@pharm.capu.edu.eg
+201121051356
Mahmoud Ibrahim Mostafa, Lecturer
Contact
mahmoud.ibrahim@pharm.capu.edu.eg
+201006605563
Eman Magdy Elsayed Elyamany, Assistant lecturer
principal investigator · Faculty of pharmacy-Helwan university

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

Not currently enrolling

This study is not yet recruiting, as verified in Jun 2026. You cannot join it, but the record below documents what was studied.

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